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Simple fractional order controller combined with a Smith predictor for temperature control in a steel slab reheating furnace

机译:简单的分数阶控制器与Smith预估器相结合,用于控制钢坯加热炉的温度

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This paper proposes a simple fractional order controller combined with a Smith predictor scheme for controlling the temperature of a steel slab reheating furnace. The dynamic model of the preheating zone of this process is obtained from an identification procedure applied in an industrial furnace. This identification procedure yields a second order plus time delay transfer function which undergoes large time delay changes. A fractional order integral controller combined with a Smith predictor is therefore designed. Simulated results compare the performances of the proposed fractional order controller with a standard PI controller, also combined with a Smith predictor, an LQR controller, and an H ∞ robust controller, in the case of the nominal process, and when the time delay varies. Four performance indexes have been used in this comparison: three related to the output performance (settling time, overshooting, and integral absolute error (IAE)), and a fourth one related to the control effort (TV). The analysis of these indexes shows that the simple fractional order controller provides lower values of the compared indexes when time delay becomes much higher than the nominal value.
机译:本文提出了一种简单的分数阶控制器,结合Smith预估器方案来控制钢坯加热炉的温度。该过程的预热区的动力学模型是从工业炉中采用的识别程序中获得的。该识别过程产生经历了较大的时延变化的二阶加时延传递函数。因此,设计了结合Smith预估器的分数阶积分控制器。仿真结果比较了建议的分数阶控制器与标准PI控制器的性能,在标称过程中以及时滞变化时,该性能也与Smith预估器,LQR控制器和H∞鲁棒控制器相结合。在此比较中使用了四个性能指标:三个与输出性能有关(稳定时间,超调和积分绝对误差(IAE)),而第四个与控制工作量(TV)有关。对这些指标的分析表明,当时间延迟变得比标称值高得多时,简单的分数阶控制器会提供较低的比较指标值。

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